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Long-term Treatment with Low-Dose Caffeine Worsens BPSD-Like Profile in 3xTg-AD Mice Model of Alzheimer's Disease and Affects Mice with Normal Aging.

低用量カフェインの長期投与はアルツハイマー病モデル3xTg-ADマウスのBPSD様プロファイルを悪化させ、正常老化マウスにも影響を与える (機械翻訳の邦題)

Frontiers in pharmacology2018Baeta-Corral R, Johansson B, Giménez-Llort L
研究デザインその他の原著論文
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記録の確認項目

研究デザイン
その他の原著論文
対象
未確定
出版年
2018
出典
doi.org
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表示あり
出版状態
有効な記録
状態確認日
2026/08/17
収集日
2026/08/03
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確認期限内
確認段階
自動処理
記録状態
公開

日本語要約(機械生成)

コーヒーやカフェインは認知症予防に有望とされるが、アルツハイマー病では認知障害に加えBPSD(認知症の行動・心理症状)も重要である。本研究では、3xTg-ADマウスと正常老化NTgマウスに対し、成人期(6ヶ月齢)から中年期(13ヶ月齢)まで低用量カフェイン(0.3 mg/ml)を飲水投与し、長期影響を調べた。その結果、カフェインは多くの行動変数に有意な影響を与え、特に新恐怖や不安様行動、情動性、認知柔軟性に影響した。3xTg-ADマウスでは新恐怖や不安関連行動の増加によりBPSD様プロファイルが悪化し、学習・記憶への有益な効果は限定的で、ナビゲーション戦略の詳細な分析でのみ認められた。NTgマウスでは情動プロファイルやリスク評価に関連する行動に選択的影響が見られ、両群の行動パターンは類似した。また、カフェインは3xTg-ADマウスの脾腫を正常化し、コルチコステロン値を上昇させる傾向があった。これらの結果は、カフェインの認知改善効果がBPSD様症状の悪化によって部分的に妨げられる可能性を示唆する。

この要約は公開抄録のみを根拠にAIが機械的に生成したものです。正確な内容は原文を確認してください。

抄録

Coffee or caffeine has recently been suggested as prophylaxis for dementia. Although memory problems are hallmarks of Alzheimer's disease, this dementia is also characterized by neuropsychiatric symptoms called Behavioral and Psychological Symptoms of Dementia (BPSD). The impact of preventive/therapeutic strategies on both cognitive and non-cognitive symptoms can be addressed in the 3xTg-AD mice, since they exhibit cognitive but also BPSD-like profiles. Here, we studied the long-term effects of a low dose of caffeine in male 3xTg-AD mice and as compared to age-matched non-transgenic (NTg) counterparts with normal aging. Animals were treated (water or caffeine in drinking water) from adulthood (6 months of age) until middle-aged (13 months of age), that in 3xTg-AD mice correspond to onset of cognitive impairment and advanced stages, respectively. The low caffeine dosing used (0.3 mg/ml) was previously found to give a plasma concentration profile in mice roughly equivalent to that of a human coffee drinker. There were significant effects of caffeine on most behavioral variables, especially those related to neophobia and other anxiety-like behaviors, emotionality, and cognitive flexibility. The 3xTg-AD and NTg mice were differently influenced by caffeine. Overall, the increase of neophobia and other anxiety-related behaviors resulted in an exacerbation of BPSD-like profile in 3xTg-AD mice. Learning and memory, strongly influenced by anxiety in 3xTg-AD mice, got little benefit from caffeine, only shown after a detailed analysis of navigation strategies. The worsened pattern in NTg mice and the use of search strategies in 3xTg-AD mice make both groups more similar. Circadian motor activity showed genotype differences, which were found to be enhanced by caffeine. Selective effects of caffeine on NTg were found in the modulation of behaviors related to emotional profile and risk assessment. Caffeine normalized splenomegaly of 3xTg-AD mice, a physical indicator of their impaired peripheral immune system, and trended to increase their corticosterone levels. Our observations of adverse caffeine effects in an Alzheimer's disease model together with previous clinical observations suggest that an exacerbation of BPSD-like symptoms may partly interfere with the beneficial cognitive effects of caffeine. These results are relevant when coffee-derived new potential treatments for dementia are to be devised and tested.

DOI 10.3389/fphar.2018.00079

PMID 29497377

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